CN213796012U - Suspension shot blasting machine capable of feeding circularly - Google Patents

Suspension shot blasting machine capable of feeding circularly Download PDF

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Publication number
CN213796012U
CN213796012U CN202022205485.1U CN202022205485U CN213796012U CN 213796012 U CN213796012 U CN 213796012U CN 202022205485 U CN202022205485 U CN 202022205485U CN 213796012 U CN213796012 U CN 213796012U
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main body
pair
suspension
shot
blasting machine
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CN202022205485.1U
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杨爱忠
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Chongqing Huding Machinery Manufacturing Co ltd
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Chongqing Huding Machinery Manufacturing Co ltd
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Abstract

The utility model discloses a shot-blasting machine suspends in midair of circulation feeding, include: a base; a main body structure fixedly disposed on the base; the utility model relates to a shot blasting machine technical field, through hanging the article on the link, the controllable motor drive moves the article to the main body incasement through the feed structure, and control the main body structure and close the back with the door body, carries out the operation through the shot blasting machine, and when hanging the ratch and moving between two atress boards, can rotate with the help of the bearing through the atress, and then drive the article and rotate while moving from left to right in the main body incasement, make things convenient for the all-round atress of article to polish; when the first object passes through the main box after being polished, the other object enters the main box again to repeat operation; the design is ingenious in structure and low in cost, a plurality of objects can be suspended simultaneously, operation is controlled to be performed in sequence, connection type continuous working is formed, and time is saved.

Description

Suspension shot blasting machine capable of feeding circularly
Technical Field
The utility model relates to a shot-blasting machine technical field specifically is a shot-blasting machine suspends in midair of circulation feeding.
Background
Shot blasting machines, which are called sand blasting machines and sand blasting machines, are casting equipment for cleaning or strengthening the surface of a casting by using high-speed shots thrown by a shot blasting machine, and are born in the United states of the 20 th century and the 30 th era; the shot blasting machines are divided into drum type, chain plate type, hanging type shot blasting machines and the like according to different structures of casting bearing bodies;
the shot blasting machine can also be used for deburring, diaphragm and rust, can influence the integrality of object part, the outward appearance, and the shot blasting machine also can get rid of the pollutant on surface to the surface of a partial coating to provide the adhesive force surface profile that increases the coating, reach the purpose of reinforceing the work piece, but its feeding of current equipment all is the business turn over material of one-way trend, and the process is comparatively loaded down with trivial details, waste time, consequently designs a suspension shot blasting machine of circulation feeding at present.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a shot-blasting machine suspends in midair of circulation feeding to solve the problem of saving time with higher speed operation.
In order to achieve the above object, the utility model provides a following technical scheme: a cyclically fed overhead shot blasting machine comprising:
a base;
a main body structure fixedly disposed on the base;
the feeding structure is fixedly arranged on the base and is positioned above the main body structure;
the body structure, includes: the shot blasting machine comprises a main box, a mounting frame, a pair of door bodies with the same structure, a pair of cylinders with the same structure, a pair of stress plates with the same structure, a shot guide plate, a collection box and a shot blasting machine;
the main body box is a rectangular box body structure without left and right side walls, a through moving groove is formed in the center of the upper wall of the main body box, a pill outlet is formed in the center of the bottom end of the front side wall of the main body box, the main body box is fixedly arranged on the upper wall of a base and is positioned on the front side of the center line close to the center, a mounting frame is fixedly welded on the upper wall of the base and is positioned on the rear side of the main body box and is positioned on the center line, one ends of a pair of door bodies are respectively and movably arranged on the rear side walls of the left and right ends of the main body box and are respectively symmetrical to each other, one ends of a pair of air cylinders are respectively and movably arranged on the upper walls of the left and right ends of the mounting frame, the telescopic ends of the air cylinders are respectively and movably connected to the side walls of the top ends of the door bodies in an inclined manner and are respectively positioned on the center line, one ends of a pair of the stress plates are respectively and fixedly arranged in the moving groove in the upper wall of the main body box and are respectively symmetrical to the front and back sides, and opposite to each other, and are equidistantly provided with a plurality of mutually staggered teeth with the same structures, one end of the shot guide plate is fixedly welded on the inner rear side wall of the main box, the other end of the shot guide plate is obliquely and fixedly arranged on the inner front side wall of the main box and is positioned at the shot outlet part, the collection box is arranged on the upper wall of the base and is positioned on the front side of the main box and is positioned at the shot outlet part, and the shot blasting machine is fixedly arranged on the front side wall of the main box and is positioned at the central part.
Preferably, the feeding structure comprises: the device comprises two pairs of pillars with the same structure, an annular slide rail, a motor, a shaft lever, a pair of belt wheels with the same structure, a transmission belt and a pair of hoisting components with the same structure;
one end of each of the two pairs of struts is fixedly welded on the upper wall of the base respectively, the two pairs of struts are positioned at the left end and the right end respectively and positioned at the front side of the main box, the annular slide rail is fixedly arranged on the two pairs of struts, the rear ends of the annular slide rail are positioned right above the other stressed plate, the motor is fixedly arranged between the two pairs of struts, the driving end of the motor is positioned at the central part of the left end of the annular slide rail, one end of the shaft lever is fixedly welded on the upper wall of the base and positioned between the right end of the shaft lever and the other pair of struts, the pair of belt wheels are fixedly sleeved on the driving end of the motor and the other end of the shaft lever respectively and positioned in the left end and the right end of the annular slide rail respectively, the driving belt is movably sleeved on the belt wheels respectively, and the pair of hoisting assemblies are movably arranged on the left end and the right end of the annular slide rail respectively and are symmetrical to each other and are fixedly connected with the driving belt respectively.
Preferably, the annular slide rail is an annular rail with an H-shaped structure.
Preferably, the hoisting assembly comprises: the device comprises a movable frame, a pair of limiting rollers with the same structure, a suspension frame, a bearing, a suspension toothed bar and a suspension ring;
the movable rack is movably arranged on the annular sliding rail, one end of the movable rack is fixedly connected to the transmission belt, the pair of limiting rollers are respectively and movably arranged on the lower wall of the movable rack and are respectively and movably embedded in the annular sliding rail, one end of the suspension rack is fixedly welded to the upper wall of the other end of the movable rack, the bearing is fixedly embedded in the other end of the suspension rack and is located at the central line part, one end of the suspension rack rod is fixedly inserted in the bearing, the other end of the suspension rack rod movably penetrates through the movable groove of the upper wall of the main box, and the suspension ring is fixedly welded at the central part of the lower wall of the other end of the suspension rack rod.
Preferably, the suspension bracket is of an L-shaped structure.
Preferably, the suspension toothed bar can be meshed with the stress plate to rotate.
Preferably, the inner wall and the outer wall of the collecting box are inclined structures.
Compared with the prior art, the beneficial effects of the utility model are that: according to the suspension shot blasting machine capable of feeding circularly, the articles are suspended on the suspension rings, the motor can be controlled to drive, the articles are moved into the main box through the feeding structure, the main structure is controlled to close the door body, the shot blasting machine is used for operating, when the suspension rack bar moves between the two stress plates, the suspension rack bar rotates through the bearing under stress, so that the articles are driven to rotate while moving from left to right in the main box, and the articles are conveniently polished under all-directional stress; when the first object passes through the main box after being polished, the other object enters the main box again to repeat operation; the design is ingenious in structure and low in cost, a plurality of objects can be suspended simultaneously, operation is controlled to be performed in sequence, connection type continuous working is formed, and time is saved.
Drawings
Fig. 1 is a schematic view of the split structure of the present invention;
fig. 2 is a schematic view of the installation structure of the present invention;
FIG. 3 is a schematic view of the assembly structure of the present invention;
FIG. 4 is a schematic view of a partially enlarged structure A of the present invention;
fig. 5 is a schematic diagram of a local enlarged structure B of the present invention.
In the figure: 1. the base, 2, the major structure, 21, the main part case, 22, the mounting bracket, 23, the door body, 24, the cylinder, 25, the atress board, 26, lead the ball board, 27, collect the box, 28, the shot-blasting machine, 3, feeding structure, 31, the pillar, 32, loop type slide rail, 33, the motor, 34, the axostylus axostyle, 35, the band pulley, 36, the drive belt, 37, hoist and mount subassembly, 371, the removal frame, 372, spacing roller, 373, the mounted frame, 374, the bearing, 375, hang the ratch, 376, the link.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a technical solution: a cyclically fed overhead shot blasting machine comprising: a base 1; a main body structure 2 fixedly arranged on the base 1; the feeding structure 3 is fixedly arranged on the base 1 and is positioned above the main body structure 2; a body structure 2 comprising: the shot blasting machine comprises a main body box 21, a mounting frame 22, a pair of door bodies 23 with the same structure, a pair of air cylinders 24 with the same structure, a pair of stress plates 25 with the same structure, a shot guiding plate 26, a collecting box 27 and a shot blasting machine 28; the main body box 21 is a rectangular box structure without left and right side walls, and the central part of the upper wall is provided with a through moving groove, and the central part of the bottom end of the front side wall is provided with a pill outlet, the main body box 21 is fixedly arranged on the upper wall of the base 1 and is positioned at the front side of the central line near the central part, the mounting rack 22 is fixedly welded on the upper wall of the base 1 and is positioned at the rear side of the main body box 21 and is positioned on the central line, one end of a pair of door bodies 23 is respectively and movably arranged on the rear side wall edges of the left and right ends of the main body box 21 and is respectively symmetrical with each other, one end of a pair of air cylinders 24 is respectively and movably arranged on the upper walls of the left and right ends of the mounting rack 22, and the telescopic end thereof is respectively and movably connected on the side wall at the top end of the door body 23 and is respectively positioned on the central line, one end of a pair of stress plates 25 is respectively and fixedly arranged in the moving groove of the upper wall of the main body box 21 and is respectively and is mutually symmetrical with the front and rear sides, and one end of the stress plates 25 is provided with a plurality of mutually staggered teeth with the same structure, one end of the shot guide plate 26 is fixedly welded on the inner rear side wall of the main box 21, the other end of the shot guide plate is obliquely and fixedly arranged on the inner front side wall of the main box 21 and is positioned at the shot outlet part, the collection box 27 is arranged on the upper wall of the base 1 and is positioned on the front side of the main box 21 and is positioned at the shot outlet part, and the shot blasting machine 28 is fixedly arranged on the front side wall of the main box 21 and is positioned at the central part; the door body 23 can be conveniently closed through the main body structure 2 to realize the closing operation.
The following electric devices have the following types and functions:
a motor: it is prior art, as long as the motor that is applicable to this scheme all can use.
A cylinder: it is prior art, as long as the cylinder that is applicable to this scheme all can use.
Shot blasting machine: the shot blasting machine is the prior art and can be used as long as the shot blasting machine is suitable for the scheme.
As a preferred embodiment, further, the feeding structure comprises: the device comprises two pairs of pillars with the same structure, an annular slide rail, a motor, a shaft lever, a pair of belt wheels with the same structure, a transmission belt and a pair of hoisting components with the same structure;
its one end of two pairs of pillars is fixed respectively and welds in the base upper wall, and lie in about both ends respectively and lie in main part case front side, ring type slide rail is fixed to be settled on two pairs of pillars, and its rear end lies in directly over another atress board wherein, motor fixed settlement is between one of them pair of pillars, and its drive end lies in ring type slide rail left end central point department, one end of axostylus axostyle is fixed and is welded in the base upper wall, and lie in the right-hand member and lie in between another pair of pillars wherein, a pair of band pulley is fixed the cover respectively on motor drive end and axostylus axostyle other end, and lie in ring type slide rail left and right sides both ends respectively, the drive belt is movable the suit respectively on the band pulley, a pair of hoist and mount subassembly is movable the setting respectively on ring type slide rail left and right sides both ends, and mutual symmetry, and respectively with the drive belt fixed continuous.
Preferably, the annular slide rail is an annular rail with an H-shaped structure.
As a preferred scheme, furthermore, the hoisting assembly comprises: the device comprises a movable frame, a pair of limiting rollers with the same structure, a suspension frame, a bearing, a suspension toothed bar and a suspension ring;
the movable rack is movably arranged on the annular slide rail, one end of the movable rack is fixedly connected to the transmission belt, the pair of limiting rollers are respectively movably arranged on the lower wall of the movable rack and are respectively and movably embedded in the annular slide rail, one end of the suspension rack is fixedly welded on the upper wall of the other end of the movable rack, the bearing is fixedly embedded in the other end of the suspension rack and is positioned at the central line part, one end of the suspension rack is fixedly inserted in the bearing, the other end of the suspension rack can movably penetrate through the movable groove of the upper wall of the main body box, and the suspension ring is fixedly welded at the central part of the lower wall of the other end of the suspension rack.
Preferably, the suspension bracket is of an L-shaped structure, so that the suspension bracket is convenient to mount and fix.
As an optimal scheme, furthermore, the suspension rack bar can be meshed with the stressed plate to rotate, so that design requirements can be met, and the object can conveniently rotate to be completely impacted.
Preferably, the lower wall of the collecting box is of an inclined structure, so that the collecting box is convenient to collect.
All the electrical components in the present application are connected with the power supply adapted to the electrical components through the wires, and an appropriate controller should be selected according to actual conditions to meet the control requirements, and specific connection and control sequences should be obtained.
Example (b): as can be seen from fig. 1 to 5 of the specification, as a preferred embodiment, the feeding structure 3 further includes: two pairs of pillars 31 with the same structure, a ring-shaped sliding rail 32, a motor 33, a shaft rod 34, a pair of belt wheels 35 with the same structure, a transmission belt 36 and a pair of hoisting components 37 with the same structure;
one end of each of the two pairs of pillars 31 is fixedly welded to the upper wall of the base 1, and is located at the left and right ends and at the front side of the main body box 21, the annular slide rail 32 is fixedly disposed on the two pairs of pillars 31, and the rear end of each of the two pairs of pillars is located right above the other stressed plate 25, the motor 33 is fixedly disposed between the one pair of pillars 31, and the driving end of each of the two pairs of pillars 31 is located at the center of the left end of the annular slide rail 32, one end of the shaft lever 34 is fixedly welded to the upper wall of the base 1, and is located between the right end and the other pair of pillars 31, the pair of belt wheels 35 are fixedly disposed on the driving end of the motor 33 and the other end of the shaft lever 34, and are located at the left and right ends of the annular slide rail 32, the driving belt 36 is movably disposed on the belt wheels 35, and the pair of hoisting assemblies 37 are movably disposed on the left and right ends of the annular slide rail 32, and are symmetrical to each other and fixedly connected to the driving belt 36.
Preferably, the ring-shaped sliding rail 32 is a ring-shaped rail with an H-shaped structure.
Preferably, the hoisting assembly 37 further includes: the device comprises a moving frame 371, a pair of limiting rollers 372 with the same structure, a suspension frame 373, a bearing 374, a suspension toothed bar 375 and a suspension ring 376;
the movable rack 371 is movably arranged on the annular slide rail 32, one end of the movable rack is fixedly connected to the transmission belt 36, the pair of limiting rollers 372 are respectively movably arranged on the lower wall of the movable rack 371 and are respectively and movably embedded in the annular slide rail 32, one end of the suspension frame 373 is fixedly welded on the upper wall of the other end of the movable rack 371, the bearing 374 is fixedly embedded in the other end of the suspension frame 373 and is positioned at the central line part, one end of the suspension rack 375 is fixedly inserted in the bearing 374, the other end of the suspension rack 375 movably penetrates through the moving groove of the upper wall of the main body box 21, and the suspension ring 376 is fixedly welded at the central part of the lower wall of the other end of the suspension rack 375.
Preferably, the suspension 373 has an L-shaped structure for easy installation and fixation.
Preferably, the hanging rack 375 can be engaged with the force-bearing plate 25 for rotation, so that the object can be conveniently rotated to be fully impacted.
Preferably, the inner bottom wall of the collecting box 27 is inclined to facilitate collection.
All the electrical components in the present application are connected with the power supply adapted to the electrical components through the wires, and an appropriate controller should be selected according to actual conditions to meet the control requirements, and specific connection and control sequences should be obtained.
Example (b): as can be seen from fig. 1 to 5 of the specification, firstly, after the apparatus is powered on through the stable support of the base 1, the processed object is respectively hung on the hanging rings 376 in the hoisting assembly 37, and then the motor 33 in the feeding structure 3 between the two pillars 31 is controlled to rotate clockwise first, so as to drive one of the belt wheels 35 to rotate, and through the movable connection of the transmission belt 36, the other belt wheel 35 is driven to rotate on the shaft rod 34, and further one of the moving frames 371 is driven to move on the annular slide rail 32 through the limit of the two limit rollers 372, and then enters the main body box 21 through the two stressed plates 25 to stop driving; secondly, controlling the two cylinders 24 on the mounting rack 22 in the main body structure 2 to extend and drive, driving the door bodies 23 on the two sides of the main body box 21 to move and close simultaneously, placing the collecting box 27 on the base 1, and using the collecting box at the position of the pill outlet part for subsequent collection; then, the shot blasting machine 28 is controlled to drive, the object is polished in operation, and meanwhile, the motor 33 is controlled to rotate in a forward and reverse reciprocating mode to drive a certain stroke, so that the movable frame 371 drives the object on the hanging ring 376 to move in a left-right reciprocating mode in the main body box 21, and when the object moves, the bearing 374 in the hanging frame 373 can be rotated by virtue of the bearing 374 in the hanging frame 373 after the bearing of the hanging frame 375 is engaged with the two stress plates 25 provided with staggered teeth, and then the object is polished in an all-dimensional stressed mode; finally, the cylinder 24 is controlled to contract, the driving motor 33 is driven to positively drive, the first object passes through the main body box 21 from left to right and then is moved out, meanwhile, the next suspended object enters the box, the same operation is repeated as above, and the moved object can be removed and replaced by the next object, so that the circular feeding processing is realized; the grinding pellets are placed obliquely by the pellet guide plate 26 and can fall into the collection box 27 by means of the self-gravity.
In the description of the present invention, it is to be understood that the terms "coaxial", "bottom", "one end", "top", "middle", "other end", "upper", "one side", "top", "inner", "front", "center", "both ends", and the like, indicate orientations or positional relationships based on the orientations or positional relationships illustrated in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation; also, unless expressly stated or limited otherwise, the terms "fixedly welded," "fixedly disposed," "fixedly attached," "movably attached," and the like are to be construed broadly and may, for example, be fixedly attached, detachably attached, or integrally formed; can be mechanically or electrically connected; they may be directly connected or indirectly connected through an intermediate medium, and may be connected through the inside of two elements or in an interaction relationship between two elements, unless otherwise specifically defined, and the specific meaning of the above terms in the present invention will be understood by those skilled in the art according to specific situations.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. A suspension shot blasting machine capable of feeding circularly is characterized by comprising:
a base (1);
a main structure (2) fixedly arranged on the base (1);
the feeding structure (3) is fixedly arranged on the base (1) and is positioned above the main body structure (2);
the body structure (2) comprising: the shot blasting machine comprises a main body box (21), a mounting frame (22), a pair of door bodies (23) with the same structure, a pair of cylinders (24) with the same structure, a pair of stress plates (25) with the same structure, a shot guiding plate (26), a collecting box (27) and a shot blasting machine (28);
the main body box (21) is a rectangular box body structure without left and right side walls, a through moving groove is formed in the center of the upper wall of the main body box, a pill outlet is formed in the center of the bottom end of the front side wall of the main body box, the main body box (21) is fixedly arranged on the upper wall of the base (1) and positioned on the front side of the center line close to the center, the mounting rack (22) is fixedly welded on the upper wall of the base (1) and positioned on the rear side of the main body box (21) and positioned on the center line, one end of each of the pair of door bodies (23) is movably arranged on the rear side walls of the left and right ends of the main body box (21) respectively and is symmetrical to each other, one end of each of the pair of air cylinders (24) is movably arranged on the upper walls of the left and right ends of the mounting rack (22) respectively, the telescopic ends of each air cylinder is obliquely and movably connected to the side wall of the top end of the door body (23) and positioned on the center line respectively, one end of each stress plate (25) is fixedly arranged in the moving groove of the upper wall of the main body box (21) respectively, the shot guiding plate (26) is fixedly welded to the inner rear side wall of the main body box (21) at one end, the other end of the shot guiding plate is obliquely and fixedly arranged on the inner front side wall of the main body box (21) and located at a shot outlet part, the collecting box (27) is arranged on the upper wall of the base (1) and located on the front side of the main body box (21) and located at the shot outlet part, and the shot blasting machine (28) is fixedly arranged on the front side wall of the main body box (21) and located at the center part.
2. The cyclically-fed suspended impeller head of claim 1, wherein: the feeding structure (3) comprises: the device comprises two pairs of pillars (31) with the same structure, a ring-shaped sliding rail (32), a motor (33), a shaft lever (34), a pair of belt wheels (35) with the same structure, a transmission belt (36) and a pair of hoisting components (37) with the same structure;
one end of each of the two pairs of the struts (31) is fixedly welded on the upper wall of the base (1) and is positioned at the left end and the right end and positioned at the front side of the main body box (21), the annular slide rail (32) is fixedly arranged on the two pairs of the struts (31), the rear end of the annular slide rail is positioned right above the other stress plate (25), the motor (33) is fixedly arranged between the one pair of the struts (31), the driving end of the motor is positioned at the central part of the left end of the annular slide rail (32), one end of the shaft lever (34) is fixedly welded on the upper wall of the base (1) and is positioned at the right end and between the other pair of the struts (31), the pair of the belt wheels (35) is fixedly sleeved on the driving end of the motor (33) and the other end of the shaft lever (34) and is positioned in the left end and the right end of the annular slide rail (32), and the driving belt (36) is movably sleeved on the belt wheels (35) respectively, the hoisting assemblies (37) are movably arranged at the left end and the right end of the annular slide rail (32) respectively, are symmetrical to each other and are fixedly connected with the transmission belt (36) respectively.
3. The cyclically-fed suspended impeller head of claim 2, wherein: the annular slide rail (32) is an annular rail with an H-shaped structure.
4. The cyclically-fed suspended impeller head of claim 2, wherein: the hoisting assembly (37) comprises: the device comprises a moving frame (371), a pair of limiting rollers (372) with the same structure, a suspension frame (373), a bearing (374), a suspension rack (375) and a suspension ring (376);
the movable rack (371) is movably arranged on the annular sliding rail (32), one end of the movable rack is fixedly connected to the transmission belt (36), the pair of limiting rollers (372) is movably arranged on the lower wall of the movable rack (371) respectively and is movably embedded in the annular sliding rail (32) respectively, one end of the suspension rack (373) is fixedly welded to the upper wall of the other end of the movable rack (371), the bearing (374) is fixedly embedded in the other end of the suspension rack (373) and is located at the central line position, one end of the suspension rack (375) is fixedly inserted in the bearing (374), the other end of the suspension rack can movably penetrate through the moving groove of the upper wall of the main body box (21), and the hanging ring (376) is fixedly welded at the central position of the lower wall of the other end of the suspension rack (375).
5. The overhead shot-blasting machine of claim 4, wherein: the suspension bracket (373) is of an L-shaped structure.
6. The overhead shot-blasting machine of claim 4, wherein: the suspension toothed bar (375) can be meshed with the stress plate (25) to rotate.
7. The cyclically-fed suspended impeller head of claim 1, wherein: the inner lower wall of the collecting box (27) is of an inclined structure.
CN202022205485.1U 2020-09-30 2020-09-30 Suspension shot blasting machine capable of feeding circularly Active CN213796012U (en)

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CN202022205485.1U CN213796012U (en) 2020-09-30 2020-09-30 Suspension shot blasting machine capable of feeding circularly

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Application Number Priority Date Filing Date Title
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CN213796012U true CN213796012U (en) 2021-07-27

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116652843A (en) * 2023-07-31 2023-08-29 江苏锡泰冶金机械设备有限公司 Shot blasting machine for motor casting production

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116652843A (en) * 2023-07-31 2023-08-29 江苏锡泰冶金机械设备有限公司 Shot blasting machine for motor casting production
CN116652843B (en) * 2023-07-31 2023-10-13 江苏锡泰冶金机械设备有限公司 Shot blasting machine for motor casting production

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